Abstract
Optical polyimide (PI) films were prepared by spin-coating from nearly non-volatile dimethylacetamide (DMAc) solutions. The uniformity of film thickness met the requirements of diffraction imaging quality. The results show that the final rotating speed ω, dynamic viscosity η, and initial polymer solid concentration c are the main factors affecting the film thickness T, and an empirical relationship which describes the film thickness as a function of the measured parameters was established to be
Funding source: National Key R&D Program of China
Award Identifier / Grant number: 2016YFB0500200
Funding statement: This research was supported in part by the National Key R&D Program of China (grant no. 2016YFB0500200).
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©2019 Walter de Gruyter GmbH, Berlin/Boston
Articles in the same Issue
- Frontmatter
- Material properties
- Characterization and corrosion resistance of ultra-high molecular weight polyethylene composite coatings reinforced with tungsten carbide particles in hydrochloric acid medium
- Tribological properties of PAANa/UHMWPE composite materials in seawater lubrication
- Preparation and assembly
- Acrylic acid-chitosan blend hydrogel: a novel polymer adsorbent for adsorption of lead(II) and copper(II) ions from wastewater
- Efficient preparation of PDMS-based conductive composites using self-designed automatic equipment and an application example
- Significant improvement of the low-temperature toughness of PVC/ASA/NBR ternary blends through the concept of mismatched thermal expansion coefficient
- Chitosan surface modified PLGA nanoparticles loaded with brigatinib for the treatment of non-small cell lung cancer
- Fabrication of polyimide films with imaging quality using a spin-coating method for potential optical applications
- Engineering and processing
- An experimental study on the micro- and nanocellular foaming of polystyrene/poly(methyl methacrylate) blend composites
- Barrel heating with inductive coils in an injection molding machine
- Influence of temperature dependence on the structural characteristics of polyoxymethylene/poly(lactic acid) blends by injection molding
- Annual reviewer acknowledgement
- Reviewer acknowledgement Journal of Polymer Engineering volume 39 (2019)
Articles in the same Issue
- Frontmatter
- Material properties
- Characterization and corrosion resistance of ultra-high molecular weight polyethylene composite coatings reinforced with tungsten carbide particles in hydrochloric acid medium
- Tribological properties of PAANa/UHMWPE composite materials in seawater lubrication
- Preparation and assembly
- Acrylic acid-chitosan blend hydrogel: a novel polymer adsorbent for adsorption of lead(II) and copper(II) ions from wastewater
- Efficient preparation of PDMS-based conductive composites using self-designed automatic equipment and an application example
- Significant improvement of the low-temperature toughness of PVC/ASA/NBR ternary blends through the concept of mismatched thermal expansion coefficient
- Chitosan surface modified PLGA nanoparticles loaded with brigatinib for the treatment of non-small cell lung cancer
- Fabrication of polyimide films with imaging quality using a spin-coating method for potential optical applications
- Engineering and processing
- An experimental study on the micro- and nanocellular foaming of polystyrene/poly(methyl methacrylate) blend composites
- Barrel heating with inductive coils in an injection molding machine
- Influence of temperature dependence on the structural characteristics of polyoxymethylene/poly(lactic acid) blends by injection molding
- Annual reviewer acknowledgement
- Reviewer acknowledgement Journal of Polymer Engineering volume 39 (2019)